Patent classifications
C09K2205/12
Refrigerant Comprising Methane, And Refrigeration System And Cabinet With Such Refrigerant
The invention relates to a refrigerant for use in a single-stage or auto cascade refrigeration system. The refrigerant comprises a mixture of gasses of at least three different hydrocarbons. The at least three different hydrocarbons include butane (C4H10), ethene (C2H4) and methane (CH4). The mixture of gasses comprises at the most 10% by weight of methane (CH4). The invention also relates to a refrigeration system with methane-containing refrigerant, to a refrigeration cabinet with methane-containing refrigerant and to use of a refrigeration cabinet with such refrigerant.
STABILIZER COMPOSITIONS AND STABILIZED HEAT TRANSFER COMPOSITIONS, METHODS AND SYSTEMS
The present invention relates to heat transfer compositions comprising refrigerant, lubricant and stabilizer, wherein the refrigerant comprises from about 10% by weight to 100% by weight of trifluoroiodomethane (CF.sub.3I), and wherein said lubricant comprises polyol ester (POE) lubricant and/or polyvinyl ether (PVE) lubricant, and wherein said stabilizer comprises at least one stabilizing compound according to the following Formula I:
##STR00001##
where each R.sup.1 is independently an epoxy terminated ethoxy, propoxy or butoxy group.
REFRIGERATION AND AIR-CONDITIONING APPARATUS
In a refrigeration and air-conditioning apparatus, an inner diameter of an upward-flow pipe is defined as an inner pipe diameter, where a spherical droplet of refrigerating machine oil with a diameter equal to the inner pipe diameter is defined as a spherical refrigerating machine oil droplet, and where a force received by the spherical refrigerating machine oil droplet from refrigerant in liquid form flowing upward through the upward-flow pipe is defined as a fluid force, the refrigerant in liquid form flows upward through the upward-flow pipe at such a speed that the fluid force is greater than a gravitational force applied to the spherical refrigerating machine oil droplet.
COLD AND HEAT STORAGE AGENT COMPOSITION
Provided is a cold and heat storage agent composition that does not fall into the GHS categories, the cold and heat storage agent composition comprising: (A) a dialkyl ether; and (B) a normal paraffin, wherein the (A) contains a dialkyl ether having a straight chain alkyl group, the (B) contains a normal paraffin having 16 to 20 carbon atoms, and a content of the normal paraffin having 16 to 20 carbon atoms is 3.0% by mass or more and less than 10.0% by mass based on a total mass of the composition, and a melting point and a freezing point of the composition measured by DSC are within a range of −13.0° C. to +12.4° C.
REFRIGERATION CYCLE APPARATUS, REFRIGERATING MACHINE OIL AND REFRIGERANT LEAKAGE PREVENTION AGENT
A refrigeration cycle apparatus, refrigerating machine oil and refrigerant leakage prevention agent. The refrigeration cycle apparatus contains a working fluid which contains a refrigerant composition including a refrigerant and a refrigerating machine oil including resin particles of which D.sub.50 and D.sub.90/D.sub.10 are 2.0 μm to 10.0 μm and 4.0 to 14.0, respectively.
Providing Single Servings of Cooled Foods and Drinks
Systems and methods have demonstrated the capability of rapidly cooling the contents of pods containing the ingredients for food and drinks.
WORKING FLUID COMPOSITION FOR REFRIGERATOR, AND REFRIGERATOR OIL
A working fluid composition for a refrigerating machine, containing: a refrigerant containing trifluoroiodomethane; and a refrigerating machine oil containing a complex ester synthesized from a polyhydric alcohol, a polybasic acid, and at least one selected from a monohydric alcohol and a monocarboxylic fatty acid.
NON-AZEOTROPIC MIXED REFRIGERANT AND REFRIGERATING APPARATUS USING NON-AZEOTROPIC MIXED REFRIGERANT
A non-azeotropic mixed refrigerant and a refrigerating apparatus using a non-azeotropic mixed refrigerant are provided. The non-azeotropic mixed refrigerant may include isobutane and propane. The non-azeotropic mixed refrigerant may be provided in a weight ratio of 50%≤isobutane≤90%. Therefore, high efficiency may be obtained in a refrigerating system using the non-azeotropic mixed refrigerant.
Providing single servings of cooled foods and drinks
Systems and methods have demonstrated the capability of rapidly cooling the contents of pods containing the ingredients for food and drinks.
Azeotrope or azeotrope like compositions comprising 1234yf
The present invention provides azeotropic or azeotrope-like compositions comprising 1234yf and at least one component selected from a group comprising of R-134, and R-134a. The compositions of the present invention are useful as refrigerants, heat transfer fluids, foam blowing agents, aerosol propellants, and fire suppression and fire extinguishing agents.